7.3 Physical digestion

Syllabus
0610–2026–2027
Topic
7.3
Level

Learning objectives

Define physical digestion

Physical digestion is the breakdown of food into smaller pieces without chemical change to the food molecules.

The pieces change in size and shape, but the molecules in the food remain the same. No new substances are made.

Physical digestion changes Physical digestion does not change
piece size, shape and total exposed surface molecular identity and chemical composition

Chewing by teeth and churning by the stomach are physical digestion because they fragment or mix food mechanically.

Smaller pieces are not smaller molecules. Breaking chemical bonds and producing different molecules is chemical digestion.

Explain why smaller food pieces speed chemical digestion

Breaking one large piece into many smaller pieces increases the food's total surface area while its amount stays the same.

smaller pieces → greater total surface area → more food exposed to enzymes at once → faster chemical digestion

Food form Exposed surface Enzyme access
one large piece relatively low mainly the outside
many small pieces higher total area more enzyme–food contact

Physical digestion does not itself create soluble products. It makes chemical digestion more efficient by improving enzyme access.

Recognise incisors, canines, premolars and molars

From the centre/front of a jaw towards the back, the usual sequence is incisors → canines → premolars → molars.

Tooth type Position and visible shape clues
incisor front; broad, flat, sharp edge
canine beside incisors; pointed crown
premolar behind canines; broader crown with ridges/cusps
molar back; largest, broad multi-cusped crown, often multiple roots

In an unfamiliar diagram, use both position and crown shape. A pointed tooth near the front is a canine; a broad cusped tooth at the back is a premolar or molar, with molars larger and farther back.

Do not identify a tooth by root number alone; diagrams vary. Position plus crown shape is the safer combination.

Describe the structure of a human tooth

A tooth has a visible crown and a root embedded in jaw bone and surrounded by gum.

Structure Location or role
enamel very hard outer covering of the crown
dentine layer beneath enamel; forms most of the tooth
pulp central living region
nerves in the pulp; detect stimuli such as pain
blood vessels in the pulp; supply oxygen and nutrients and remove wastes
cement covers the root and helps anchor it
bone and gums bone holds the roots; gums surround and protect the tooth base

Read a section from outside to inside: enamel on the crown (cement on the root) → dentine → pulp containing nerves and blood vessels.

Enamel does not cover the whole root, and the pulp is not an empty space: it contains living tissues, nerves and blood vessels.

Match tooth types to their functions

Different crown shapes apply different forces during physical digestion.

Tooth type Main action on food Shape–function link
incisors bite and cut sharp edge slices food
canines pierce and tear pointed crown grips and tears
premolars crush and grind broad ridged surface presses food
molars crush and grind thoroughly large, broad cusped surface withstands strong forces

Together, the teeth reduce food to smaller pieces, increasing surface area and making swallowing and enzyme action easier.

Canines tear; incisors cut. Premolars and molars both grind and crush, but molars are larger and farther back.

Explain physical digestion in the stomach

The stomach's muscular wall contracts to churn food, physically breaking it into smaller pieces and mixing it with gastric juice.

Repeated muscular contractions squeeze and turn the stomach contents. This makes a more uniform mixture and exposes more food surface.

Churning increases the surface area available for chemical digestion without changing the food molecules itself.

The stomach performs both physical and chemical digestion, but churning and mixing are the physical part; acid and enzymes belong to chemical digestion.

Explain how bile emulsifies fats and oils

Bile emulsifies fats and oils: it breaks large fat globules into many small droplets in the small intestine.

large fat globule → many small droplets → greater total surface area → more contact with lipase → faster chemical digestion of fat

Bile is made by the liver, stored in the gall bladder and released into the duodenum.

Emulsification is physical digestion: it changes droplet size but does not chemically break fat molecules. Bile is not an enzyme; lipase performs the chemical digestion.